Commissioning
4.2 Commissioning with BOP-2 operator panel
SINAMICS G120C converter
54 Getting Started, 04/2014, FW V4.7, A5E34264105B AA
p2267 Techn. controller upper limit actual value [100 ≙
p2268 Techn. controller lower limit actual value [100 ≙
Techn. controller gain actual value [%]
Techn. controller actual value function selection
p2271 Techn. controller actual value inversion (sensor
1 Inversion of the technology controller actual
r2272 CO: Techn. controller actual value scaled [100 ≙
CO: Techn. controller error [100 ≙ 100%]
p2274 Techn. controller actual differentiation time
constant [s]
Techn. controller proportional gain
p2285 Techn. controller integral time [s]
BI: Hold techn. controller integrator
p2289 CI: Techn. controller pre-control signal [100 ≙
p2291 CO: Techn. controller maximum limit [100 ≙
CO: Techn. controller minimum limit [100 ≙ 100%]
Techn. controller ramp-up/ramp-down time [s]
CO: Techn. controller output signal [100 ≙ 100%]
CO: Techn. controller output scaling [100 ≙ 100%]
CI: Techn. controller output scaling [100 ≙ 100%]
p2297 CI: Techn. controller maximum limit signal source
p2298 CI: Techn. controller minimum limit signal source
CI: Techn. controller limit offset [100 ≙ 100%]
Techn. controller output signal start value [%]
Techn. controller fault signal inversion
1 Inversion of the techn. controller fault signal
r2344 CO: Techn. controller last speed setpoint
Techn. controller fault response
For a fault: change over to r2344 (or p2302)
For a fault: Change over to p2215
CO/BO: Techn. controller status word
CO: Fixed value 1 [100 ≙ 100%]
CO: Fixed value 2 [100 ≙ 100%]
CO: Fixed values [100 ≙ 100%]
Direct axis flux model display
CO/BO: NAMUR message bit bar
Change safety message type
Safety messages are not reparameterized
Safety messages are reparameterized
Diagnostic attribute fault
Diagnostic attribute alarm
Torque actual value filter time constant [ms]
p3320 Fluid flow machine P = f(n), Y coordinate: P flow
p3321 Fluid flow machine P = f(n), X coordinate: n flow
P = f(n), Y coordinate: P flow 2%, point 2
P = f(n), X coordinate: n flow 2%, point 2
P = f(n), Y coordinate: P flow 3%, point 3
P = f(n), X coordinate: n flow 3%, point 3
P = f(n), Y coordinate: P flow 4%, point 4
P = f(n), X coordinate: n flow 4%, point 4
P = f(n), Y coordinate: P flow 5%, point 5
P = f(n), X coordinate: n flow 5%, point 5